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250 lines
9.1 KiB
250 lines
9.1 KiB
4 months ago
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/*
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* Copyright 2012 The WebRTC project authors. All Rights Reserved.
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*
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* Use of this source code is governed by a BSD-style license
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* that can be found in the LICENSE file in the root of the source
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* tree. An additional intellectual property rights grant can be found
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* in the file PATENTS. All contributing project authors may
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* be found in the AUTHORS file in the root of the source tree.
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*/
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#include "pc/ice_server_parsing.h"
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#include <string>
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#include <vector>
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#include "p2p/base/port_interface.h"
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#include "rtc_base/ip_address.h"
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#include "rtc_base/socket_address.h"
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#include "test/gtest.h"
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namespace webrtc {
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class IceServerParsingTest : public ::testing::Test {
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public:
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// Convenience functions for parsing a single URL. Result is stored in
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// |stun_servers_| and |turn_servers_|.
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bool ParseUrl(const std::string& url) {
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return ParseUrl(url, std::string(), std::string());
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}
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bool ParseTurnUrl(const std::string& url) {
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return ParseUrl(url, "username", "password");
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}
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bool ParseUrl(const std::string& url,
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const std::string& username,
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const std::string& password) {
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return ParseUrl(
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url, username, password,
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PeerConnectionInterface::TlsCertPolicy::kTlsCertPolicySecure);
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}
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bool ParseUrl(const std::string& url,
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const std::string& username,
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const std::string& password,
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PeerConnectionInterface::TlsCertPolicy tls_certificate_policy) {
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return ParseUrl(url, username, password, tls_certificate_policy, "");
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}
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bool ParseUrl(const std::string& url,
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const std::string& username,
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const std::string& password,
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PeerConnectionInterface::TlsCertPolicy tls_certificate_policy,
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const std::string& hostname) {
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stun_servers_.clear();
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turn_servers_.clear();
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PeerConnectionInterface::IceServers servers;
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PeerConnectionInterface::IceServer server;
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server.urls.push_back(url);
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server.username = username;
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server.password = password;
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server.tls_cert_policy = tls_certificate_policy;
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server.hostname = hostname;
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servers.push_back(server);
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return webrtc::ParseIceServers(servers, &stun_servers_, &turn_servers_) ==
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webrtc::RTCErrorType::NONE;
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}
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protected:
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cricket::ServerAddresses stun_servers_;
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std::vector<cricket::RelayServerConfig> turn_servers_;
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};
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// Make sure all STUN/TURN prefixes are parsed correctly.
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TEST_F(IceServerParsingTest, ParseStunPrefixes) {
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EXPECT_TRUE(ParseUrl("stun:hostname"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ(0U, turn_servers_.size());
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EXPECT_TRUE(ParseUrl("stuns:hostname"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ(0U, turn_servers_.size());
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EXPECT_TRUE(ParseTurnUrl("turn:hostname"));
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EXPECT_EQ(0U, stun_servers_.size());
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ(cricket::PROTO_UDP, turn_servers_[0].ports[0].proto);
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EXPECT_TRUE(ParseTurnUrl("turns:hostname"));
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EXPECT_EQ(0U, stun_servers_.size());
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ(cricket::PROTO_TLS, turn_servers_[0].ports[0].proto);
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EXPECT_TRUE(turn_servers_[0].tls_cert_policy ==
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cricket::TlsCertPolicy::TLS_CERT_POLICY_SECURE);
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EXPECT_TRUE(ParseUrl(
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"turns:hostname", "username", "password",
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PeerConnectionInterface::TlsCertPolicy::kTlsCertPolicyInsecureNoCheck));
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EXPECT_EQ(0U, stun_servers_.size());
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_TRUE(turn_servers_[0].tls_cert_policy ==
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cricket::TlsCertPolicy::TLS_CERT_POLICY_INSECURE_NO_CHECK);
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EXPECT_EQ(cricket::PROTO_TLS, turn_servers_[0].ports[0].proto);
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// invalid prefixes
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EXPECT_FALSE(ParseUrl("stunn:hostname"));
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EXPECT_FALSE(ParseUrl(":hostname"));
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EXPECT_FALSE(ParseUrl(":"));
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EXPECT_FALSE(ParseUrl(""));
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}
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TEST_F(IceServerParsingTest, VerifyDefaults) {
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// TURNS defaults
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EXPECT_TRUE(ParseTurnUrl("turns:hostname"));
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ(5349, turn_servers_[0].ports[0].address.port());
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EXPECT_EQ(cricket::PROTO_TLS, turn_servers_[0].ports[0].proto);
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// TURN defaults
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EXPECT_TRUE(ParseTurnUrl("turn:hostname"));
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ(3478, turn_servers_[0].ports[0].address.port());
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EXPECT_EQ(cricket::PROTO_UDP, turn_servers_[0].ports[0].proto);
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// STUN defaults
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EXPECT_TRUE(ParseUrl("stun:hostname"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ(3478, stun_servers_.begin()->port());
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}
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// Check that the 6 combinations of IPv4/IPv6/hostname and with/without port
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// can be parsed correctly.
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TEST_F(IceServerParsingTest, ParseHostnameAndPort) {
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EXPECT_TRUE(ParseUrl("stun:1.2.3.4:1234"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ("1.2.3.4", stun_servers_.begin()->hostname());
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EXPECT_EQ(1234, stun_servers_.begin()->port());
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EXPECT_TRUE(ParseUrl("stun:[1:2:3:4:5:6:7:8]:4321"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ("1:2:3:4:5:6:7:8", stun_servers_.begin()->hostname());
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EXPECT_EQ(4321, stun_servers_.begin()->port());
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EXPECT_TRUE(ParseUrl("stun:hostname:9999"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ("hostname", stun_servers_.begin()->hostname());
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EXPECT_EQ(9999, stun_servers_.begin()->port());
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EXPECT_TRUE(ParseUrl("stun:1.2.3.4"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ("1.2.3.4", stun_servers_.begin()->hostname());
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EXPECT_EQ(3478, stun_servers_.begin()->port());
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EXPECT_TRUE(ParseUrl("stun:[1:2:3:4:5:6:7:8]"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ("1:2:3:4:5:6:7:8", stun_servers_.begin()->hostname());
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EXPECT_EQ(3478, stun_servers_.begin()->port());
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EXPECT_TRUE(ParseUrl("stun:hostname"));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ("hostname", stun_servers_.begin()->hostname());
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EXPECT_EQ(3478, stun_servers_.begin()->port());
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// Both TURN IP and host exist
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EXPECT_TRUE(
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ParseUrl("turn:1.2.3.4:1234", "username", "password",
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PeerConnectionInterface::TlsCertPolicy::kTlsCertPolicySecure,
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"hostname"));
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EXPECT_EQ(1U, turn_servers_.size());
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rtc::SocketAddress address = turn_servers_[0].ports[0].address;
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EXPECT_EQ("hostname", address.hostname());
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EXPECT_EQ(1234, address.port());
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EXPECT_FALSE(address.IsUnresolvedIP());
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EXPECT_EQ("1.2.3.4", address.ipaddr().ToString());
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// Try some invalid hostname:port strings.
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EXPECT_FALSE(ParseUrl("stun:hostname:99a99"));
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EXPECT_FALSE(ParseUrl("stun:hostname:-1"));
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EXPECT_FALSE(ParseUrl("stun:hostname:port:more"));
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EXPECT_FALSE(ParseUrl("stun:hostname:port more"));
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EXPECT_FALSE(ParseUrl("stun:hostname:"));
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EXPECT_FALSE(ParseUrl("stun:[1:2:3:4:5:6:7:8]junk:1000"));
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EXPECT_FALSE(ParseUrl("stun::5555"));
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EXPECT_FALSE(ParseUrl("stun:"));
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}
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// Test parsing the "?transport=xxx" part of the URL.
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TEST_F(IceServerParsingTest, ParseTransport) {
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EXPECT_TRUE(ParseTurnUrl("turn:hostname:1234?transport=tcp"));
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ(cricket::PROTO_TCP, turn_servers_[0].ports[0].proto);
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EXPECT_TRUE(ParseTurnUrl("turn:hostname?transport=udp"));
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ(cricket::PROTO_UDP, turn_servers_[0].ports[0].proto);
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EXPECT_FALSE(ParseTurnUrl("turn:hostname?transport=invalid"));
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EXPECT_FALSE(ParseTurnUrl("turn:hostname?transport="));
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EXPECT_FALSE(ParseTurnUrl("turn:hostname?="));
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EXPECT_FALSE(ParseTurnUrl("turn:hostname?"));
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EXPECT_FALSE(ParseTurnUrl("?"));
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}
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// Reject pre-RFC 7065 syntax with ICE username contained in URL.
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TEST_F(IceServerParsingTest, ParseRejectsUsername) {
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EXPECT_FALSE(ParseTurnUrl("turn:user@hostname"));
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}
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// Test that username and password from IceServer is copied into the resulting
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// RelayServerConfig.
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TEST_F(IceServerParsingTest, CopyUsernameAndPasswordFromIceServer) {
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EXPECT_TRUE(ParseUrl("turn:hostname", "username", "password"));
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EXPECT_EQ(1U, turn_servers_.size());
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EXPECT_EQ("username", turn_servers_[0].credentials.username);
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EXPECT_EQ("password", turn_servers_[0].credentials.password);
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}
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// Ensure that if a server has multiple URLs, each one is parsed.
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TEST_F(IceServerParsingTest, ParseMultipleUrls) {
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PeerConnectionInterface::IceServers servers;
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PeerConnectionInterface::IceServer server;
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server.urls.push_back("stun:hostname");
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server.urls.push_back("turn:hostname");
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server.username = "foo";
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server.password = "bar";
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servers.push_back(server);
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EXPECT_EQ(webrtc::RTCErrorType::NONE,
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webrtc::ParseIceServers(servers, &stun_servers_, &turn_servers_));
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EXPECT_EQ(1U, stun_servers_.size());
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EXPECT_EQ(1U, turn_servers_.size());
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}
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// Ensure that TURN servers are given unique priorities,
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// so that their resulting candidates have unique priorities.
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TEST_F(IceServerParsingTest, TurnServerPrioritiesUnique) {
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PeerConnectionInterface::IceServers servers;
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PeerConnectionInterface::IceServer server;
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server.urls.push_back("turn:hostname");
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server.urls.push_back("turn:hostname2");
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server.username = "foo";
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server.password = "bar";
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servers.push_back(server);
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EXPECT_EQ(webrtc::RTCErrorType::NONE,
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webrtc::ParseIceServers(servers, &stun_servers_, &turn_servers_));
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EXPECT_EQ(2U, turn_servers_.size());
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EXPECT_NE(turn_servers_[0].priority, turn_servers_[1].priority);
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}
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} // namespace webrtc
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